IP Library Granted Patent US 12,723,364
Granted Patent B2
US 12,723,364 · App. 18/499,744 · Granted Sep 1, 2026

Work machine with a lift linkage assembly

Inventors: Nilesh T. Kumbhar (Karad, IN); Brett S. Graham (Dubuque, IA); Eric Vilar (Dubuque, IA); Giovanni A. Wuisan (Epworth, IA)
Assignee: Deere & Company
E02F3/3414E02F3/38
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Quick Facts
Patent No.
US 12,723,364
App. No.
18/499,744
Granted
Sep 1, 2026
Kind
B2
Abstract

A work machine comprising of a frame extending longitudinally, a ground-engaging unit supporting the frame, and an operator cab coupled to the frame. A boom is pivotally coupled to a rear portion of the frame and coupled to the attachment coupler at a forward portion of the boom. The boom extends longitudinally and is configured to move the attachment coupler from a first position to a second position relative to the frame along a lift path. A boom lift assembly couples the rear portion of the boom to the frame and wherein the boom lift assembly guides the boom to move the attachment coupler along the lift path.

Claims (59)

1 . A work machine comprising:

a frame extending longitudinally;

a ground-engaging unit supporting the frame;

an operator cab coupled to the frame;

an attachment coupler;

a boom is pivotally coupled to the attachment coupler at a forward portion of the boom, the boom extending longitudinally and configured to move the attachment coupler from a first position to a second position relative to the frame along a lift path; and

a boom lift assembly coupling a rear portion of the boom to the frame, the boom lift assembly guiding the boom to move the attachment coupler along the lift path,

wherein the boom lift assembly includes

a bar extending longitudinally and connected to the rear portion of the frame, the bar having a first bar junction forward of a second bar junction, the first bar junction and the second bar junction at opposing ends of the bar;

a lower link extending rearward of the second bar junction, a first lower link end pivotally coupled to the frame at the second bar junction, a second lower link end pivotally coupled to a rearmost boom junction; a first distance being defined between the second bar junction and the rearmost boom junction;

an upper link extending rearward of the first bar junction, a first upper

link end coupled to the frame at an upper link junction located above the bar and between the first bar junction and the second bar junction, a second upper link end pivotally coupled to the boom at a second rearmost boom junction; and

an actuator extending rearward of the first bar junction, a first actuator end pivotally coupled to the frame at the first bar junction, a second actuator end pivotally coupled to the boom at a third rearmost boom junction

wherein the boom and the boom lift assembly are mirrored across a longitudinal centerline of the frame,

and a support bar transversely oriented from the longitudinal centerline and couples the lower links of a left boom lift assembly and a right boom lift assembly, the support bar sitting below the line of sight of the operator.

2 . The work machine of claim 1 , wherein a second distance being defined as between the rearmost boom junction and the second rearmost boom junction, a length ratio of the second distance to the first distance being 0.2 to 0.3.

3 . The work machine of claim 2 , wherein a third distance being defined as between the first upper link junction and the second rearmost junction, the length ratio of the third distance to the first distance is in a length ratio range of 1.1 and 1.2.

4 . The work machine of claim 3 , wherein a fourth distance being defined as between the upper link junction and the second bar junction, the length ratio of the fourth distance to the first distance is in the length ratio range of 0.4 and 0.5.

5 . The work machine of claim 1 , wherein the operator cab is forwardly biased away from a frame center.

6 . The work machine of claim 1 , wherein the ground-engaging unit comprises of:

a track frame;

a track-chain extending around an outer periphery of a track frame;

a first idler wheel and a second idler wheel rotatably coupled to longitudinally opposed track frame end portion; and

a drive sprocket mounted rearward of the track frame.

7 . The work machine of claim 6 , wherein a drive sprocket center axis is elevated relative to an idler wheel center axis.

8 . The work machine of claim 6 , wherein the drive sprocket and the second idler wheel are located directly below the boom lift assembly.

9 . The work machine of claim 6 , wherein the ground-engaging unit comprises of wheels.

10 . The work machine of claim 1 , wherein the angle between the rear portion of the boom and fore portion of the boom is at least 150 degrees.

11 . A compact track loader comprising:

a frame extending longitudinally;

a ground-engaging unit supporting the frame;

an operator cab coupled to the frame;

an attachment coupler;

a boom is pivotally coupled to the attachment coupler at a forward portion of the boom, the boom extending longitudinally and configured to move the attachment coupler from a first position to a second position relative to the frame along a lift path; and

a boom lift assembly coupling a rear portion of the boom to the frame, the boom lift assembly guiding the boom to move the attachment coupler along the lift path,

wherein the boom lift assembly includes

a bar extending longitudinally and connected to the rear portion of the frame, the bar having a first bar junction forward of a second bar junction, the first bar junction and the second bar junction at opposing ends of the bar;

a lower link extending rearward of the second bar junction, a first lower link end pivotally coupled to the frame at the second bar junction,

a second lower link end pivotally coupled to a rearmost boom junction; a first distance being defined between the second bar junction and the rearmost boom junction;

an upper link extending rearward of the first bar junction, a first upper link end coupled to the frame at an upper link junction located above the bar and between the first bar junction and the second bar junction, a second upper link end pivotally coupled to the boom at a second rearmost boom junction; and

an actuator extending rearward of the first bar junction, a first actuator end pivotally coupled to the frame at the first bar junction, a second actuator end pivotally coupled to the boom at a third rearmost boom junction,

wherein a second distance being defined as between the rearmost boom junction and the second rearmost boom junction, a length ratio of the second distance to the first distance being in a length ratio range of 0.2 to 0.3,

wherein a third distance being defined as between the upper link junction and the second rearmost junction, the length ratio of the third distance to the first distance is in the length ratio range of 1.1 and 1.2, and

wherein a fourth distance being defined as between the upper link junction and the second bar junction, the length ratio of the fourth distance to the first distance is in the length ratio range of 0.4 and 0.5

and a support bar transversely oriented from the longitudinal centerline and couples the lower links of a left boom lift assembly and a right boom lift assembly, the support bar sitting below the line of sight of the operator.

12 . The compact track loader of claim 11 , wherein an angle between the rear portion of the boom and fore portion of the boom is at least 150 degrees.

13 . A work machine linkage assembly comprising:

a boom is pivotally coupled to the attachment coupler at a forward portion of the boom, the boom extending longitudinally and configured to move the attachment coupler from a first position to a second position relative to the frame along a lift path; and

a boom lift assembly coupling a rear portion of the boom to the frame, the boom lift assembly guiding the boom to move the attachment coupler along the lift path,

wherein the boom lift assembly includes

a bar extending longitudinally and connected to the rear portion of the frame, the bar having a first bar junction forward of a second bar junction, the first bar junction and the second bar junction at opposing ends of the bar;

a lower link extending rearward of the second bar junction, a first lower link end pivotally coupled to the frame at the second bar junction, a second lower link end pivotally coupled to a rearmost boom junction; a first distance being defined between the second bar junction and the rearmost boom junction;

an upper link extending rearward of the first bar junction, a first upper link end coupled to the frame at an upper link junction located above the bar and between the first bar junction and the second bar junction, a second upper link end pivotally coupled to the boom at a second rearmost boom junction; and

an actuator extending rearward of the first bar junction, a first actuator end pivotally coupled to the frame at the first bar junction, a second actuator end pivotally coupled to the boom at a third rearmost boom junction,

wherein a second distance being defined as between the rearmost boom junction and the second rearmost boom junction, a length ratio of the second distance to the first distance being 0.2 to 0.3,

wherein a third distance being defined as between the upper link junction and the second rearmost junction, the length ratio of the third distance to the first distance is in the length ratio range of 1.1 and 1.2, and

wherein a fourth distance being defined as between upper link junction and the second bar junction, the length ratio of the fourth distance to the first distance is in the length ratio range of 0.4 and 0.5

and a support bar transversely oriented from the longitudinal centerline and couples the lower links of a left boom lift assembly and a right boom lift assembly, the support bar sitting below the line of sight of the operator.

14 . The work machine linkage assembly of claim 13 , wherein an angle between the rear portion of the boom and fore portion of the boom is at least 150 degrees.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2023
From: KUMBHAR, NILESH T.; GRAHAM, BRETT S.; VILAR, ERIC; WUISAN, GIOVANNI A.
To: DEERE & COMPANY
Reel/Frame 065425/0141 →
Continuity (1)
Related Publication 20250137219A1 · May 1, 2025
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